Intelligent central control auxiliary display multifunctional electronic sports display
By designing an intelligent central control auxiliary display, the problems of complicated operation and insufficient health management of e-sports monitors are solved, achieving simplified operation, immersive gaming experience and real-time health monitoring, thereby improving user interaction and monitor function utilization.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TPV ELECTRONICS (FUJIAN) CO LTD
- Filing Date
- 2025-04-22
- Publication Date
- 2026-04-17
AI Technical Summary
Existing gaming monitors are cumbersome to operate, lack system control assistance, which affects user experience and health management, and cannot achieve user-friendly AI intelligent voice control and video communication interaction.
Design a smart central control auxiliary display multi-functional e-sports monitor, including a main screen monitor and a central control auxiliary screen. The central control auxiliary screen is equipped with a microphone, speaker, camera and communication unit, supports touch interaction, monitors user health through AI voice and peripheral devices, and realizes one-click function control and health reminders.
It improves the user interaction experience, enables immersive gaming, simplifies operation, provides health management functions, supports video communication and real-time health monitoring, and enhances the functionality utilization of the monitor.
Smart Images

Figure CN224137709U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of display device technology, and in particular to a smart central control auxiliary display multi-functional e-sports monitor. Background Technology
[0002] Currently, most gaming monitors on the market are controlled via buttons and OSD (On-Screen Display), lacking a system-wide auxiliary screen control function. All settings options on these monitors are located on the main OSD interface, which is cumbersome and difficult to fully utilize without consulting the manual, resulting in a poor user experience. Users must switch out of the game or use their phones to handle external information, disrupting the flow of gameplay and creating an untidy interface. Operating the OSD on the main screen negatively impacts the user's immersive gaming experience. Human-computer interaction is limited to the keypad. There is a lack of user-friendly AI intelligent voice control and AI intelligent stand adjustment functions. The monitors also lack intelligent health management features for gamers, hindering the monitoring and management of health issues arising from prolonged monitor use. Utility Model Content
[0003] The purpose of this utility model is to provide a smart central control auxiliary display multi-functional e-sports monitor.
[0004] The technical solution adopted in this utility model is:
[0005] A smart central control auxiliary display multi-functional e-sports monitor includes a main screen monitor and a central control auxiliary screen. The main screen monitor has a power supply unit, which is electrically connected to the power supply module of the central control auxiliary screen, and the power supply unit of the main screen monitor provides power to the power supply module.
[0006] The central control auxiliary screen is detachably hinged to the bezel of the main screen display; the central control auxiliary screen is electrically connected to the main screen display and communicates with it; the central control auxiliary screen includes a housing and an auxiliary display screen set on the surface of the housing, and the housing contains a central control circuit board and a microphone, speaker, camera and communication unit connected to the central control circuit board; the microphone is used for sound pickup, the speaker is used for audio playback, and the camera captures and acquires images of the human head and posture; the communication unit includes a Wi-Fi chip and a Bluetooth chip, and the central control auxiliary screen establishes a communication connection with external third-party devices through the communication unit.
[0007] Furthermore, the central control auxiliary screen adopts a touch screen, which is used for human-computer interaction.
[0008] Furthermore, users can control the main display screen via UART or IIC transmission commands through the central control auxiliary screen.
[0009] Furthermore, the housing includes a front shell and a rear cover, and the front shell has a speaker hole on at least one side of the perimeter of the auxiliary display screen. Furthermore, the front shell has speaker holes on opposite sides of the auxiliary display screen.
[0010] Furthermore, at least one side bezel of the main screen display is provided with a hinge, and one side of the bezel of the central control auxiliary screen is provided with a hinge mounting slot; the mounting slot of the central control auxiliary screen is tightly fitted with the hinge so that the central control auxiliary screen can be suspended and fixed at a specified angle when it rotates.
[0011] Furthermore, the central control auxiliary screen is installed on the bottom edge of the main screen display bezel or on either the left or right side.
[0012] Furthermore, the main display has a display stand, which includes a base and a support arm vertically mounted on the base. The back of the main display is hinged to the top of the support arm via a connecting shaft. The relative angle adjustment of the main display in the up, down, left, and right directions is achieved through the display stand and a motor-driven sliding rail braking device between the display stand and the main display, making it convenient for use in different situations.
[0013] Furthermore, the central control board of the central control auxiliary screen is also connected to a 6-axis sensor and an ambient light sensor. The 6-axis sensor collects the angle of the display and corrects the user's sitting posture, while the ambient light sensor collects the ambient light brightness.
[0014] Furthermore, the central control board of the central control auxiliary screen is also connected to a memory and a central control interface unit. The memory is used to store data in the central control auxiliary screen; the central control interface unit includes a UART interface, an HDMI interface, an I2C interface, an SDIO interface, a USB interface, and a serial interface; the main screen display has a UART interface, an HDMI interface, a DP interface, a USB interface, and a serial interface.
[0015] Furthermore, the peripheral third-party devices include one or more of the following: smart bracelets, smartwatches, and smartphones, with the smart bracelets or smartwatches having heart rate monitoring capabilities.
[0016] This utility model adopts the above technical solution and has the following technical advantages: 1) Through the system central control auxiliary screen design, the main screen simply displays the image, while the central control auxiliary screen (with Touch function) completes all control functions of OSD and hardware switches; realizing interactive functions between the user and the main display screen, such as voice control and real-time detection of the user's posture and vision; 2) Through the system central control auxiliary screen design, in conjunction with third-party devices, it realizes the monitoring of user parameters such as heart rate, blood pressure, and blood oxygen saturation, displaying them in real time and providing voice reminders; 3) Players can use the system central control auxiliary screen to achieve video communication and interaction while playing games; 4) It realizes the PC auxiliary signal display function, allowing the main screen to simply display the image, mainly completing the display of information of particular interest to the user, such as game main control parameters and system performance parameters. Attached Figure Description
[0017] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments;
[0018] Figure 1 This is a schematic diagram of the structure of a smart central control auxiliary display multi-functional e-sports monitor according to the present invention;
[0019] Figure 2 This is an exploded view of a smart central control auxiliary display multi-functional e-sports monitor according to the present invention;
[0020] Figure 3 This is a side view of the intelligent central control auxiliary display multi-functional e-sports monitor of the present invention;
[0021] Figure 4 This is a schematic diagram of the software functions of the central control auxiliary screen of this utility model;
[0022] Figure 5 This is a schematic diagram illustrating the software function principle of a smart central control auxiliary display multi-functional e-sports monitor according to the present invention;
[0023] Figure 6 This is a hardware system block diagram of a smart central control auxiliary display multi-functional e-sports monitor according to the present invention. Detailed Implementation
[0024] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings.
[0025] like Figures 1 to 5As shown in the figure, this utility model discloses an intelligent central control auxiliary display multi-functional e-sports monitor, including a main screen monitor 1 and a central control auxiliary screen 2. The main screen monitor 1 has a power supply unit, which is electrically connected to the power supply module of the central control auxiliary screen 2, and the power supply unit of the main screen monitor 1 provides power to the power supply module.
[0026] The central control auxiliary screen 2 is detachably hinged to the frame of the main screen display 1, and is electrically connected to the main screen display 1 (detachable). The user inputs function commands through the central control auxiliary screen 2 to control the main screen display 2 to achieve OSD and hardware switch control functions. The central control auxiliary screen 2 includes a housing 3 and an auxiliary display screen 4 set on the surface of the housing 3. The housing 3 contains a central control board and a microphone 5, a speaker 6, a camera, and a communication unit connected to the central control board. The microphone 5 is used for sound pickup, the speaker 6 is used for audio playback, and the camera captures and acquires images of the human head and posture. The communication unit includes a Wi-Fi chip and a Bluetooth chip, and the central control auxiliary screen 2 establishes a communication connection with external third-party devices through the communication unit.
[0027] Furthermore, the central control auxiliary screen 2 adopts a touch screen, which is used for human-computer interaction.
[0028] Furthermore, users can control the main display screen via UART or IIC transmission commands through the central control auxiliary screen 2.
[0029] Furthermore, the housing 3 includes a front housing 31 and a rear cover 32. The front housing 31 has a speaker hole 33 on at least one side of the periphery of the auxiliary display screen 4. Furthermore, the front housing 31 has speaker holes 33 on opposite sides of the auxiliary display screen 4.
[0030] Furthermore, at least one side bezel of the main screen display 1 is provided with a pivot 11, and one side of the bezel of the central control auxiliary screen 2 is provided with a mounting slot for the pivot 11; the mounting slot of the central control auxiliary screen 2 is tightly fitted with the pivot 11 so that the central control auxiliary screen 2 can be suspended and fixed at a specified angle when it rotates.
[0031] Furthermore, the central control auxiliary screen 2 can be detachably hinged to the bottom edge of the main screen display 1 frame or to either the left or right side.
[0032] Furthermore, the main display 1 has a display stand 12, which includes a base and a support arm vertically mounted on the base. The back of the main display 1 is hinged to the top of the support arm via a connecting shaft, allowing the main display 1 to be rotated to change its relative angle, making it convenient for use in different situations.
[0033] Furthermore, the main display 1 has a display stand 12, which includes a base and a support arm vertically mounted on the base. The back of the main display is hinged to the top of the support arm via a connecting shaft. The relative angle adjustment of the main display 1 in the up, down, left, and right directions is achieved through the display stand and a motor-driven sliding rail braking device between the display stand and the main display 1, making it convenient for use in different situations.
[0034] Furthermore, the central control board of the central control auxiliary screen 2 is also connected to a 6-axis sensor and an ambient light sensor. The 6-axis sensor collects the angle of the display and corrects the user's sitting posture, while the ambient light sensor collects the ambient light brightness.
[0035] Furthermore, the central control board of the central control auxiliary screen 2 is also connected to a memory and a central control interface unit. The memory is used to store data in the central control auxiliary screen 2. The central control interface unit includes a UART interface, an HDMI interface, an I2C interface, an SDIO interface, a USB interface, and a serial interface. The main screen display 1 has a UART interface, an HDMI interface, a DP interface, a USB interface, and a serial interface.
[0036] Furthermore, the peripheral third-party devices include one or more combinations of smart bracelets, smartwatches, and smartphones, with the smart bracelets or smartwatches having heart rate monitoring capabilities. This invention can communicate with the user's bracelet via Bluetooth to read relevant heart rate, blood pressure, and blood oxygen saturation parameters, enabling real-time display and voice alerts.
[0037] Furthermore, as a feasible implementation, the central control board of the central control auxiliary screen 2 of this utility model can be equipped with a control system. As a general example, the control system integrates a health management application, a main screen display 1 function control application, an AI voice function unit, an AI camera head tracking unit, and a PC auxiliary screen display unit. The health management application is used to make behavioral health judgments based on data collected by peripheral third-party devices and the head distance and user posture collected by the camera, and to provide corresponding health reminders and displays. The main screen display 1 function control application provides control functions for the OSD functions of the main screen display 1, replacing the original main screen OSD function control. Function commands are generated through the main screen display 1 function control application to control the main screen display, allowing the main screen to simply display images, while the central control auxiliary screen 2 (with Touch function) completes all control functions for the OSD and hardware switches. The AI voice function unit is used for voice input recognition, converting the recognized functions into function commands and transmitting them to the main screen via UART / IIC to complete voice function control.
[0038] The AI camera head-tracking unit tracks the position of the user's head relative to the screen and generates control commands to send to the main display 1 to adjust the display angle. It also identifies the distance between the user and the screen, providing voice and display reminders, such as: "You are too close to the display; please maintain a healthy distance" (healthy distance calculation formula: optimal viewing distance ≈ screen diagonal length (display size) × 1.5-1.6 times). Simultaneously, it determines if the user's posture is significantly off-center; if so, it reminds the user that their posture may need adjustment. The AI camera head-tracking unit monitors user posture, the distance between the face and the screen, and screen time. If screen time exceeds a preset range (e.g., 2 hours), it reminds the user to take a break.
[0039] The PC auxiliary display unit allows the main display screen 1 to simply display the image, while the central control auxiliary screen 2 primarily displays information of particular interest to the user, such as game control parameters and system performance parameters. The central control auxiliary screen 2 provides extended display when the main display screen 1 is insufficient or inconvenient to display information.
[0040] Furthermore, the main display 1 function control application provides interactive functions for commonly used software, the function of switching the signal source to an external PC signal, and the brightness and volume adjustment functions of the main display 1. Commonly used software includes WeChat, QQ, music playback and other software.
[0041] This invention adds a touch-sensitive central control auxiliary screen 2, which isolates all display function controls and external information (WeChat, QQ, music, etc.) processing from the game interface, allowing users to immerse themselves in the game. The main display 1's function is transformed from OSD control to one-click APP function control via the central control auxiliary screen 2. AI voice control is also added for convenient real-time voice control. This invention utilizes the health management function of the central control auxiliary screen system, combining user usage time with data reading, analysis, and judgment of heart rate and blood pressure parameters, to output health information and provide voice reminders for health management. This invention integrates information and settings options outside the game via the touch-sensitive auxiliary screen, avoiding the disconnect caused by switching programs to process information during gameplay, allowing users to fully immerse themselves in the game interface. This invention replaces the old OSD design with one-click APP function control and the original Key Pad design with a central control approach. When the signal is a PC signal input, it can also be used as an auxiliary screen for the PC. The auxiliary screen can be used in conjunction with the main screen, or in conjunction with the PC, or it can be detached and used independently as a PAD, realizing a high utilization rate of a high-value product with multiple uses.
[0042] This utility model adopts the above technical solution and has the following technical advantages: 1) Through the design of the system central control auxiliary screen 2, the main screen simply displays the screen, while the central control auxiliary screen 2 (with Touch function) completes all control functions of OSD and hardware switches; it realizes the interactive function between the user and the main display screen, such as voice control and real-time detection of the user's posture and vision; 2) Through the design of the system central control auxiliary screen 2, it realizes the monitoring of user parameters such as heart rate, blood pressure, and blood oxygen saturation, and displays them in real time with voice reminders; 3) Players can use the system central control auxiliary screen 2 to achieve video communication and interaction while playing games; 4) It realizes the PC auxiliary signal display function, allowing the main screen to simply display the screen, mainly to complete the display of information that the user is particularly concerned about, such as game main control parameters and system performance parameters.
[0043] Obviously, the described embodiments are only a part of the embodiments of this application, not all of them. Without conflict, the embodiments and features in the embodiments of this application can be combined with each other. The components of the embodiments of this application described and illustrated herein can generally be arranged and designed in various different configurations. Therefore, the detailed description of the embodiments of this application is not intended to limit the scope of the claimed application, but merely to illustrate selected embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
Claims
1. A smart central control auxiliary display multi-functional e-sports display, characterized in that: It includes a main screen display and a central control auxiliary screen. The main screen display has a power supply unit, which is electrically connected to the power supply module of the central control auxiliary screen, and the power supply unit of the main screen display provides power to the power supply module. The central control auxiliary screen is installed on the bezel of the main screen display. The central control auxiliary screen is electrically connected to the main screen display. Users can send function commands through the central control auxiliary screen to control the main screen display. The central control auxiliary screen includes a housing and an auxiliary display screen mounted on the surface of the housing. Inside the housing is a central control circuit board and a microphone, speaker, camera and communication unit connected to the central control circuit board. The microphone is used for sound pickup, the speaker is used for audio playback, and the camera captures and acquires images of the human head and posture. The communication unit includes a Wi-Fi chip and a Bluetooth chip. The central control auxiliary screen establishes communication connections with external third-party devices through the communication unit.
2. The intelligent central control auxiliary display multi-functional e-sports display according to claim 1, characterized in that: The central control auxiliary screen transmits function commands to the main screen display via UART or IIC to control the main screen display. 3.The intelligent center control auxiliary display multi-functional e-sports display of claim 1, wherein: The housing includes a front shell and a rear cover, and the front shell has a speaker hole on at least one side of the perimeter of the auxiliary display screen.
4. The intelligent center control auxiliary display multi-functional e-sports display according to claim 1, characterized in that: The main screen display has a hinge on at least one side of its bezel, and the central control auxiliary screen has a hinge mounting slot on one side of its bezel; the mounting slot of the central control auxiliary screen is tightly fitted with the hinge so that the central control auxiliary screen can be suspended and fixed at a specified angle when it rotates.
5. The intelligent center control auxiliary display multi-functional e-sports display according to claim 1, characterized in that: The central control circuit board of the central control auxiliary screen is also connected to a 6-axis sensor and an ambient light sensor. The 6-axis sensor collects the angle of the display and corrects the user's sitting posture, while the ambient light sensor collects the ambient light brightness. 6.The intelligent center control auxiliary display multi-functional e-sports display of claim 1, wherein: The central control board of the central control auxiliary screen is also connected to a memory and a central control interface unit. The memory stores data. The central control auxiliary screen is connected to the corresponding interface of the main screen display through the central control interface unit. The central control interface unit includes a UART interface, an HDMI interface, an I2C interface, an SDIO interface, a USB interface, and a serial interface. The main screen display has a UART interface, an HDMI interface, a DP interface, a USB interface, and a serial interface. 7.The intelligent center control auxiliary display multi-functional e-sports display of claim 1, wherein: Peripheral third-party devices include one or more of the following: smart bracelets, smartwatches, and smartphones, with the smart bracelets or smartwatches having heart rate monitoring capabilities. 8.The intelligent center control auxiliary display multi-functional e-sports display of claim 1, wherein: The central control auxiliary screen is installed on the bottom edge of the main screen display bezel or on either the left or right side.
9. A smart central control auxiliary display multi-functional e-sports monitor according to claim 1, characterized in that: The main display has a display stand, which includes a base and a support arm vertically mounted on the base. The back of the main display is hinged to the top of the support arm via a connecting shaft. The relative angle adjustment of the main display in the up, down, left, and right directions is achieved through the display stand and a motor-driven sliding rail braking device between the display stand and the main display.